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Anastasy [175]
3 years ago
14

What determines what the size of the mineral will be?

Chemistry
2 answers:
Charra [1.4K]3 years ago
3 0

Answer: Density and the elements that it composes.

Explanation: The elements that form the mineral and the size of atoms of these minerals is what ultimately matters in the determination of the size the mineral will be.

zloy xaker [14]3 years ago
3 0
Hope it help you this is the answer
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Fill in all the grey boxes including the green box. PLEASE HELP
Amiraneli [1.4K]

Answer:

2Na + 2H2O ----> 2NaOH + H2

Explanation:

6 0
3 years ago
Determine the heat of reaction (ΔHrxn) for the reaction of calcium carbonate (CaCO3) with HCl to produce CO2 by using heat of fo
andrey2020 [161]

Answer: The heat of reaction (ΔHrxn) for the reaction is -164.9kJ

Explanation:

The given balanced chemical reaction is,

CaCO_3(s)+2HCl(g)\rightarrow CaCl_2(s)+CO_2(g)+H_2O(g)

To calculate the enthalpy of reaction (\Delta H^o).

\Delta H^o=H_f_{product}-H_f_{reactant}

\Delta H^o=[n_{CaCl_2}\times \Delta H_f^0_{(CaCl_2)}+n_{CO_2}\times \Delta H_f^0_{(CO_2)}+n_{H_2O}\times \Delta H_f^0_{(H_2O)}]-[n_{CaCO_3}\times \Delta H_f^0_{(CaCO_3)+n_{HCl}\times \Delta H_f^0_{(HCl)}]

where,

\Delta H^o_f_{(CaCO_3(s))}=-1206.9kJ/mol\\\Delta H^o_f_{(HCl(g))}=-92.30kJ/mol\\\Delta H^o_f_{(CaCl_2(s))}=-877.1kJ/mol\\\Delta H^o_f_{(H_2O(g))}=-285.8kJ/mol\\\Delta H^o_f_{(CO_2(g))}=-393.51kJ/mol

Putting values in above equation, we get:

\Delta H^o_{rxn}=[(1\times -877.1)+(1\times -393.51)+(1\times -285.8)]-[(1\times -1206.9)+(2\times -92.30)]=-164.9kJ

Therefore the heat of reaction (ΔHrxn) for the reaction is -164.9kJ

6 0
3 years ago
Enter the condensed electron configuration for cu4+.express your answer in condensed form, in order of increasing orbital energy
Marysya12 [62]
Electronic Configuration of Cu⁴⁺ is written using these two steps;

Step I:
          Write the Electronic Configuration of Copper (Cu).

As Atomic Number of Cu = 29
So,
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Rearranging it in order of increasing orbital energy,

                             1s², 2s², 2p⁶, 3s², 3p⁶, 4s¹, 3d¹⁰
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Step II:
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4 years ago
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